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首页> 外文期刊>Oncogene >Matrix Metalloproteinase-9 gene induction by a truncated oncogenic NF-|[kappa]|B2 protein involves the recruitment of MLL1 and MLL2 H3K4 histone methyltransferase complexes
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Matrix Metalloproteinase-9 gene induction by a truncated oncogenic NF-|[kappa]|B2 protein involves the recruitment of MLL1 and MLL2 H3K4 histone methyltransferase complexes

机译:截短的致癌NF- | [κ1] B2蛋白的基质金属蛋白酶-9基因诱导涉及募集MLL1和MLL2 H3K4组蛋白甲基转移酶复合物

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摘要

Constitutive nuclear factor (NF)-κB activation in haematological malignancies is caused in several cases by loss of function mutations within the coding sequence of NF-κB inhibitory molecules such as IκBα or p100. Hut-78, a truncated form of p100, constitutively generates p52 and contributes to the development of T-cell lymphomas but the molecular mechanism underlying this oncogenic potential remains unclear. We show here that MMP9 gene expression is induced through the alternative NF-κB-activating pathway in fibroblasts and also on Hut-78 or p52 overexpression in fibroblasts as well as in lymphoma cells. p52 is critical for Hut-78-mediated MMP9 gene induction as a Hut-78 mutant as well as other truncated NF-κB2 proteins that are not processed into p52 failed to induce the expression of this metalloproteinase. Conversely, MMP9 gene expression is impaired in p52-depleted HUT-78 cells. Interestingly, MLL1 and MLL2 H3K4 methyltransferase complexes are tethered by p52 on the MMP9 but not on the IκBα promoter, and the H3K4 trimethyltransferase activity recruited on the MMP9 promoter is impaired in p52-depleted HUT-78 cells. Moreover, MLL1 and MLL2 are associated with Hut-78 in a native chromatin-enriched extract. Thus, we identified a molecular mechanism by which the recruitment of a H3K4 histone methyltransferase complex on the promoter of a NF-κB-dependent gene induces its expression and potentially the invasive potential of lymphoma cells harbouring constitutive activity of the alternative NF-κB-activating pathway.
机译:通过在NF-κB抑制分子如IκBα或P100的编码序列内失去血液恶性肿瘤中的组成核因子(NF)-κB活化是在几种情况下引起的。 Hut-78,P100的截短形式,组成型成分地产生P52并有助于T细胞淋巴瘤的发育,但这种致癌潜力的分子机制仍不清楚。在此显示,通过成纤维细胞中的替代NF-κB活化途径和成纤维细胞和淋巴瘤细胞中的HUT-78或P52过表达诱导MMP9基因表达。 P52对于Hut-78介导的MMP9基因诱导至关重要的MMP9基因诱导,作为突突突变体以及未加工成P52的其他截短的NF-κB2蛋白未能诱导该金属蛋白酶的表达。相反,MMP9基因表达在P52耗尽的HUT-78细胞中受损。有趣的是,MLL1和MLL2 H3K4甲基转移酶复合物在MMP9上通过P52束缚,但不在IκBα启动子上,并且在MMP9启动子上募集的H3K4三甲基转移酶活性在P52耗尽的HUT-78细胞中受到损害。此外,MLL1和MLL2与富含富含染色质提取物中的HUT-78相关联。因此,我们鉴定了一种分子机制,通过该分子机制,通过该分子机制通过该分子机制,在NF-κB依赖性基因的启动子上募集H3K4组蛋白甲基转移酶复合物诱导其表达和潜在的淋巴瘤细胞的侵袭性潜力,涉及替代NF-κB活化的组成型活性途径。

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